生物
视网膜神经节细胞
细胞生物学
视神经
RAC1
星形胶质细胞
青光眼
视网膜
缝隙连接
信号转导
神经科学
生物化学
中枢神经系统
细胞内
作者
Guoli Zhao,Hong Zhou,Yun‐Hui Guo,Shu‐Min Zhong,Han Zhou,Li Fang,Bo Lei,Zhongfeng Wang,Yanying Miao
出处
期刊:Glia
[Wiley]
日期:2023-02-16
卷期号:71 (6): 1502-1521
被引量:7
摘要
Abstract Connexin43 (Cx43) is a major gap junction protein in glial cells. Mutations have been found in the gap‐junction alpha 1 gene encoding Cx43 in glaucomatous human retinas, suggestive of the involvement of Cx43 in the pathogenesis of glaucoma. However, how Cx43 is involved in glaucoma is still unknown. We showed that increased intraocular pressure in a glaucoma mouse model of chronic ocular hypertension (COH) downregulated Cx43, which was mainly expressed in retinal astrocytes. Astrocytes in the optic nerve head where they gather and wrap the axons (optic nerve) of retinal ganglion cells (RGCs) were activated earlier than neurons in COH retinas and the alterations in astrocytes plasticity in the optic nerve caused a reduction in Cx43 expression. A time course showed that reductions of Cx43 expression were correlated with the activation of Rac1, a member of the Rho family. Co‐immunoprecipitation assays showed that active Rac1, or the downstream signaling effector PAK1, negatively regulated Cx43 expression, Cx43 hemichannel opening and astrocyte activation. Pharmacological inhibition of Rac1 stimulated Cx43 hemichannel opening and ATP release, and astrocytes were identified to be one of the main sources of ATP. Furthermore, conditional knockout of Rac1 in astrocytes enhanced Cx43 expression and ATP release, and promoted RGC survival by upregulating the adenosine A3 receptor in RGCs. Our study provides new insight into the relationship between Cx43 and glaucoma, and suggests that regulating the interaction between astrocytes and RGCs via the Rac1/PAK1/Cx43/ATP pathway may be used as part of a therapeutic strategy for managing glaucoma.
科研通智能强力驱动
Strongly Powered by AbleSci AI